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A Novel Centralized PV Power Plant Controller for Reducing the Voltage Unbalance Factor at Transmission Level Interconnection

机译:一种新型的集中式光伏电站控制器,用于减少传输级互连时的电压不平衡因子

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摘要

This paper presents a novel centralized positive and negative sequence control strategy for enhancing the unbalanced operation of electric transmission networks. The proposed control strategy is deployed as an effective ancillary service provided by a photovoltaic power plants. The excess capacity of grid-tied inverters is utilized based on a novel centralized positive and negative sequence reactive current division algorithm. The control strategy dynamically allocates the amount of reactive power compensated by each inverter in the power plant according to its active power generation level. The performance of the proposed control strategy is evaluated for a photovoltaic power plant connected to the IEEE 12-bus Flexible AC Transmission Systems test system in steady-state and transient operation. This is demonstrated through unbalanced loads and asymmetrical grid faults. The proposed control strategy effectively reduced the voltage unbalance factor within the acceptable operating limits, and enhanced the transient response at the transmission level interconnection. This is achieved in order to adhere to grid codes’ requirements and the IEC 61000-3-13 standard.
机译:本文提出了一种新颖的集中式正负序控制策略,以增强输电网络的不平衡运行。拟议的控制策略被部署为光伏电站提供的有效辅助服务。基于新型集中式正序和负序无功分流算法,利用并网逆变器的过剩容量。控制策略根据有功功率水平动态分配发电厂中每个逆变器补偿的无功功率量。对于在稳态和瞬态运行中连接到IEEE 12总线柔性交流输电系统测试系统的光伏电站,评估了所提出的控制策略的性能。通过不平衡负载和不对称电网故障可以证明这一点。所提出的控制策略有效地将电压不平衡因数减小到可接受的工作范围内,并增强了传输级互连处的瞬态响应。为了遵守电网规范的要求和IEC 61000-3-13标准,可以达到此目的。

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